Noctua NF-P12 redux-1700 PWM: Not every low-end is the same

… and airflow

To write that we have something mapped out to the last detail is perhaps too bold, but after proper preparation, few pieces of hardware are as easy to evaluate as fans. Of course, this had to be preceded by long preparations, developing a methodology, but you already know the story. What you don’t know yet is the first fruit, or rather the results of Akasa, SilentiumPC, SilverStone, Xigmatek or more exotic Reeven fans.

… and airflow

With airflow measurements, we can well explain why the test tunnel is shaped the way it is. It doesn’t consist of two parts just so that the “exhaust” can be conveniently clogged for pressure measurements. The anemometer (i.e. the wind speed measuring instrument) is held together by two parts, two formations, through the flanges.
The front part, at the beginning of which the fan is mounted, becomes steadily narrower and from about two thirds of the way through the cross-section is smaller than that of a 120 mm fan. The reason for this is that the cross-section of the anemometer is always smaller than that of the fans tested. The taper towards the anemometer fan is as smooth as could be chosen and the tunnel walls are smooth. This has minimized the occurrence of unnatural turbulence.
The difference between the cross section at the intake (fan under test) and at the constriction point (anemometer) also means a difference in dynamic pressure, the principles of the Venturi effect apply here. In order to avoid distortion at this level and to ensure that the fan airflow is not different from what it actually is, the Bernoulli equation must be applied to the measured values (for maximum accuracy, the calculation also takes into account the internal cross-sectional area of the anemometer, i.e. its inactive part ). After all this, it is again possible to confront our results with the paper parameters.

We use an Extech AN300 anemometer with a large 100 mm fan for the measurements. Its big advantage over other anemometers is that it is made for bidirectional sensing. This allows tests at different fan orientations. However, the “pull” position is more suitable or accurate for measurements, even though it may not seem so at first glance, but we’ll explain.

Here, we get to the second part of the tunnel, the part behind the anemometer. It is part of the whole device, mainly to allow a laminar flow of air to arrive at the rotor of the anemometer. Otherwise, uncontrolled side whirls would be reflected in the results, which are inconsistent with accurate measurements. Therefore, we will test the flow in the pull position. If anyone would like us to elaborate more on this topic, we can elaborate further at any time in the discussion below the article. Ask away. 🙂

The rear of the tunnel ensures, among other things, that the air supply to the anemometer fan is laminar

In connection with the anemometer, we will return a little more to the noise measurements and to the setting of modes according to fixed noise levels. It may have occurred to you as you were reading that the anemometer fan is also a source of sound that needs to be filtered out when testing fans. For this reason, we insert a belay pad between the frame and the anemometer fan before each measurement and mode setting according to the fixed noise level.


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Now in black… Noctua’s shortest high-performance cooler

For users who don’t sympathize with Noctua’s traditional brown and beige color scheme, the NH-D12L cooler is now out in chromax.black. The cooler differs from most competing models by its lower profile (while still having plenty of fins). And the NH-D12L chromax.black is also one of the few dual-tower CPU coolers which never collide with memory modules on the motherboard when oriented vertically. Read more “Now in black… Noctua’s shortest high-performance cooler” »

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Release of Noctua’s 140mm next-gen fans sticks to schedule

The title couldn’t fit a “despite complications with the frame”. Even though Noctua figured out that the fan blades could collide under adverse circumstances due to deformation of the frame in a more advanced stage of prototyping, it seems that the fix for this inconvenience didn’t take too long. We’re again at the point where it looks like Noctua’s 140mm LCP fans are right outside the doors of the retail market. Read more “Release of Noctua’s 140mm next-gen fans sticks to schedule” »

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The new card you won’t hear – Asus RTX 4080 Super Noctua

Asus and Noctua managed to launch the latest joint graphics card earlier than ever this time. The Asus RTX 4080 Super Noctua Edition is being released alongside the other models. Noctua has apparently already optimized its cooler to satisfaction on the older variant, the RTX 4080, and the situation on the RTX 4080 Super hasn’t changed enough to require design intervention. Everything is ready for production. Read more “The new card you won’t hear – Asus RTX 4080 Super Noctua” »

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One comment Add comment

  1. Buying the Asus ROG Strix XF120 reading your review! It’s 20-50% better in nearly every category/setup vs the Noctua! Love my high-end Noctuas but for the cheaper side to case cool my new i9 14900k OC’d well over 350W on my custom loop, I need all the fan performance I can get. ASUS ftw again! Plus I have mainly ROG in it as we speak. 🙂

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